Kobayashi Yuya, Yuzawa Chinami, Kurashina Minori, Shimizu Yusaku, Hanaoka Yoshiki, Sato Atsushi, Hongo Kazuhiro, Sekijima Yoshiki
Department of Neurology, Ina Central Hospital, Ina, Japan.
Department of Neurosurgery, Ina Central Hospital, Ina, Japan.
Interv Neuroradiol. 2025 May 14:15910199251341642. doi: 10.1177/15910199251341642.
BackgroundCarotid artery stenting (CAS) is a recognized intervention for preventing atherothrombotic cerebral infarction in patients with internal carotid artery stenosis. Although filter protection systems are used to prevent the migration of distal debris during CAS, in combination with manual aspiration and flow reversal systems, their behavior under retrograde blood flow remains poorly understood. This study aimed to evaluate the filter behavior under various flow conditions in CAS.MethodsAn silicone tube model was used to simulate the carotid artery environment during CAS. The FilterWire EZ system was used to examine the filter behavior under various flow conditions: antegrade, stagnation, and retrograde. Additionally, the behavior of the simulated debris was analyzed, including particles that matched the filter pore sizes and smaller particles.ResultsThe filter net expanded under antegrade flow, indented during balloon inflation, and collapsed during manual aspiration. The simulated debris captured by the net was released under retrograde flow conditions. When the antegrade flow was restored, debris similar in size to the net was mostly recaptured, but smaller particles passed through.ConclusionThe effectiveness of filter protection in CAS is contingent on blood flow dynamics and procedural techniques used. These findings advocate for flexible, individualized approaches that consider detailed preoperative assessments of the vascular anatomy and blood flow characteristics to enhance the safety of CAS.
背景
颈动脉支架置入术(CAS)是预防颈内动脉狭窄患者动脉粥样硬化性脑梗死的一种公认的干预措施。尽管在CAS期间使用滤器保护系统来防止远端碎片的迁移,并结合手动抽吸和血流逆转系统,但它们在逆行血流情况下的行为仍知之甚少。本研究旨在评估CAS中各种血流条件下滤器的行为。
方法
使用硅胶管模型模拟CAS期间的颈动脉环境。使用FilterWire EZ系统检查滤器在各种血流条件下的行为:顺行、停滞和逆行。此外,分析了模拟碎片的行为,包括与滤器孔径匹配的颗粒和较小的颗粒。
结果
滤网在顺行血流下扩张,在球囊膨胀时凹陷,在手动抽吸时塌陷。滤网捕获的模拟碎片在逆行血流条件下释放。当恢复顺行血流时,与滤网大小相似的碎片大多被重新捕获,但较小的颗粒会通过。
结论
CAS中滤器保护的有效性取决于血流动力学和所使用的操作技术。这些发现主张采用灵活、个性化的方法,考虑对血管解剖结构和血流特征进行详细的术前评估,以提高CAS的安全性。